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用原位脑灌注技术研究苯丙氨酸通过血脑屏障的转运。

Phenylalanine transport across the blood-brain barrier as studied with the in situ brain perfusion technique.

作者信息

Momma S, Aoyagi M, Rapoport S I, Smith Q R

出版信息

J Neurochem. 1987 Apr;48(4):1291-300. doi: 10.1111/j.1471-4159.1987.tb05660.x.

Abstract

Unidirectional L-phenylalanine transport into six brain regions of pentobarbital-anesthetized rats was studied using the in situ brain perfusion technique. This technique allows both accurate measurements of cerebrovascular amino acid transport and complete control of perfusate amino acid composition. L-Phenylalanine influx into the brain was sodium independent and could be described by a model with a saturable and a nonsaturable component. Best-fit values for the kinetic constants in the parietal cortex equaled 6.9 X 10(-4) mumol/s/g for Vmax, 0.011 mumol/ml for Km, and 1.8 X 10(-4) ml/s/g for KD during perfusion with fluid that did not contain competing amino acids. D-Phenylalanine competitively inhibited L-phenylalanine transport with a Ki approximately 10-fold greater than the Km for L-phenylalanine. There were no significant regional differences in Km, KD, or Ki, whereas Vmax was significantly greater in the cortical lobes than in the other brain regions. L-Phenylalanine influx during plasma perfusion was only 30% of that predicted in the absence of competing amino acids. Competitive inhibition increased the apparent Km during plasma perfusion by approximately 20-fold, to 0.21 mumol/ml. These data provide accurate new estimates of the kinetic constants that describe L-phenylalanine transport across the blood-brain barrier. In addition, they indicate that the cerebrovascular transfer site affinity (1/Km) for L-phenylalanine is three- to 12-fold greater than previously estimated in either awake or anesthetized animals.

摘要

采用原位脑灌注技术研究了戊巴比妥麻醉大鼠的六个脑区对L-苯丙氨酸的单向转运。该技术既能精确测量脑血管氨基酸转运,又能完全控制灌注液的氨基酸组成。L-苯丙氨酸向脑内的流入不依赖于钠,可用一个包含饱和成分和非饱和成分的模型来描述。在用不含竞争性氨基酸的液体灌注时,顶叶皮质中动力学常数的最佳拟合值为:Vmax为6.9×10⁻⁴ μmol/s/g,Km为0.011 μmol/ml,KD为1.8×10⁻⁴ ml/s/g。D-苯丙氨酸竞争性抑制L-苯丙氨酸转运,其Ki约比L-苯丙氨酸的Km大10倍。Km、KD或Ki没有显著的区域差异,而Vmax在皮质叶中显著高于其他脑区。血浆灌注期间L-苯丙氨酸的流入量仅为无竞争性氨基酸时预测值的30%。竞争性抑制使血浆灌注期间的表观Km增加了约20倍,达到0.21 μmol/ml。这些数据提供了描述L-苯丙氨酸跨血脑屏障转运的动力学常数的准确新估计。此外,它们表明脑血管转运位点对L-苯丙氨酸的亲和力(1/Km)比清醒或麻醉动物先前估计的高3至12倍。

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